Chang Yajun, Yang Bin, Zhang Yu, Dong Chenxi, Liu Lei, Zhao Xincheng, Wang Guirong
State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China.
Department of Entomology, College of Plant Protection, Henan Agricultural University, Zhengzhou, China.
Front Physiol. 2022 Aug 8;13:953538. doi: 10.3389/fphys.2022.953538. eCollection 2022.
Insect brains play important roles in the regulation of sex-biased behaviors such as mating and oviposition. The neural structure and function of brain differences between males and females have been identified, in which the antenna lobes (AL) showed the most discrepancy, however, the whole repertoire of the genes expressed in the brains and the molecular mechanism of neural signaling and structural development are still unclear. In this study, high-throughput transcriptome analysis of male and female brains was carried on in the Asia corn borer, , and a total of 39.23 Gb data and 34,092 unigenes were obtained. Among them, 276 genes displayed sex-biased expression by DEG analysis, of which 125 genes were highly expressed in the males and 151 genes were highly expressed in the females. Besides, by homology analysis against genes that have been confirmed to be related to brain neurodevelopment, a total of 24 candidate genes were identified in . In addition, to further screen the core genes that may be important for sex-biased nerve signaling and neurodevelopment, protein-protein interaction networks were constructed for the sex-biased genes and neurodevelopment genes. We identified 10 (, , , , , , , , , and ), 11 (, , , , , , , , , , and ) and 8 (, , , , , , , and ) core hub genes that may be related to brain neural development from male-biased, female-biased, and neurodevelopment gene groups. Our results provide a reference for further analysis of the dimorphism of male and female brain structures in agricultural pests.
昆虫大脑在调节诸如交配和产卵等性别偏向行为中发挥着重要作用。已经确定了雄性和雌性大脑在神经结构和功能上的差异,其中触角叶(AL)表现出最大的差异,然而,大脑中表达的全部基因以及神经信号传导和结构发育的分子机制仍不清楚。在本研究中,对亚洲玉米螟的雄性和雌性大脑进行了高通量转录组分析,共获得39.23Gb数据和34,092个单基因。其中,通过差异表达基因(DEG)分析有276个基因表现出性别偏向表达,其中125个基因在雄性中高表达,151个基因在雌性中高表达。此外,通过与已证实与脑神经元发育相关的基因进行同源性分析,在亚洲玉米螟中总共鉴定出24个候选基因。此外,为了进一步筛选可能对性别偏向神经信号传导和神经发育重要的核心基因,构建了性别偏向基因和神经发育基因的蛋白质-蛋白质相互作用网络。我们从雄性偏向、雌性偏向和神经发育基因组中鉴定出10个(、、、、、、、、和)、11个(、、、、、、、、、、和)和8个(、、、、、、、和)可能与脑神经元发育相关的核心枢纽基因。我们的研究结果为进一步分析农业害虫雌雄脑结构的二态性提供了参考。